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ADP-ribosylating and vacuolating cytotoxin of Mycoplasma pneumoniae represents unique virulence determinant among bacterial pathogens

机译:肺炎支原体的ADP核糖基化和空泡化细胞毒素代表细菌病原体中独特的毒力决定因素

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摘要

Unlike many bacterial pathogens, Mycoplasma pneumoniae is not known to produce classical toxins, and precisely how M. pneumoniae injures the respiratory epithelium has remained a mystery for >50 years. Here, we report the identification of a virulence factor (MPN372) possibly responsible for airway cellular damage and other sequelae associated with M. pneumoniae infections in humans. We show that M. pneumoniae MPN372 encodes a 68-kDa protein that possesses ADP-ribosyltransferase (ART) activity. Within its N terminus, MPN372 contains key amino acids associated with NAD binding and ADP-ribosylating activity, similar to pertussis toxin (PTX) S1 subunit (PTX-S1). Interestingly, MPN372 ADP ribosylates both identical and distinct mammalian proteins when compared with PTX-S1. Remarkably, MPN372 elicits extensive vacuolization and ultimate cell death of mammalian cells, including distinct and progressive patterns of cytopathology in tracheal rings in organ culture that had been previously ascribed to infection with WT virulent M. pneumoniae. We observed dramatic seroconversion to MPN372 in patients diagnosed with M. pneumoniae-associated pneumonia, indicating that this toxin is synthesized in vivo and possesses highly immunogenic epitopes.
机译:与许多细菌性病原体不同,肺炎支原体不产生经典毒素,而肺炎支原体如何损伤呼吸道上皮一直是50多年来的一个谜。在这里,我们报告鉴定可能与人类肺炎支原体感染相关的气道细胞损伤和其他后遗症的致病因子(MPN372)。我们显示,肺炎支原体MPN372编码具有ADP-核糖基转移酶(ART)活性的68 kDa蛋白。在其N末端,MPN372包含与NAD结合和ADP-核糖基化活性相关的关键氨基酸,类似于百日咳毒素(PTX)S1亚基(PTX-S1)。有趣的是,与PTX-S1相比,MPN372 ADP会将相同和不同的哺乳动物蛋白核糖基化。值得注意的是,MPN372引发了哺乳动物细胞的广泛空泡化和最终细胞死亡,包括器官培养中气管环中细胞病理学的明显和进行性模式,这种模式先前被归因于WT毒性肺炎支原体的感染。我们在诊断为肺炎支原体相关性肺炎的患者中观察到了急剧的血清转化为MPN372的现象,表明该毒素在体内合成,并具有高度免疫原性的表位。

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